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Enhancing the Impact of Biodiesel Blend on Combustion, Emissions, and Performance of DI Diesel Engine

机译:增强生物柴油混合物对DI柴油机燃烧,排放和性能的影响

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摘要

The current research is conducted to evaluate experimentally the combustion, emissions, and performance of a 4-stroke,DI diesel engine when titanium dioxide nanoparticles are added to castor biodiesel–diesel blend in varying doses. Theexperiments are conducted at engine speed of 2000 rpm, various loads. Results of this study reveal that utilizing of titaniumoxide nanoparticles (TiO_2NPs) additives improves engine performance and reduces emissions. A decrease in brake-specificfuel consumption (BSFC) and an increase in brake thermal efficiency of up to 4.8% and 37.7%, respectively, are recorded.The ultimate reduction in NO_x emission is 44.3% and is achieved at a TiO_2NPs dose of 120 mg/l and 40% engine load. Inaddition to this reduction, a 5% decrease in CO emission, 4.25% increase in cylinder pressure and 15% deterioration in theBSFC are also recorded. Also, the maximum reduction in CO emission is 27% and is attained at TiO_2NPsdose of 80 mg/l and 80% engine load. This reduction is accompanied with 6% decrease in NO_x emission, 1.1% increase in cylinder pressure, and 4.8% reduction in BSFC. Based on the obtained results, the recommended dose of TiO_2NPs in blend CB30 is 80 mg/l.
机译:当前的研究是通过实验评估将二氧化钛纳米颗粒以不同剂量添加到蓖麻生物柴油-柴油混合物中时,四冲程DI柴油机的燃烧,排放和性能。实验是在2000 rpm的发动机转速,各种负载下进行的。这项研究的结果表明,利用二氧化钛纳米颗粒(TiO_2NPs)添加剂可以改善发动机性能并减少排放。 TiO_2NPs剂量为120 mg时,制动比油耗(BSFC)降低了,制动热效率分别提高了4.8%和37.7%。最终NO_x排放量降低了44.3%。 / l和40%的发动机负载。除此减少外,还记录了CO排放降低5%,气缸压力升高4.25%和BSFC降低15%。同样,CO排放的最大减少量为27%,并且在TiO_2NPs剂量为80 mg / l和发动机负荷为80%时达到了。这种减少伴随着NO_x排放减少6%,气缸压力增加1.1%和BSFC减少4.8%。根据获得的结果,混合CB30中TiO_2NP的推荐剂量为80 mg / l。

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